首页> 外文会议>ASME/STLE international joint tribology conference 2012 >A FULLY COUPLED FLUID-STRUCTURE-INTERACTION MODEL FOR FOIL GAS BEARINGS
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A FULLY COUPLED FLUID-STRUCTURE-INTERACTION MODEL FOR FOIL GAS BEARINGS

机译:箔气体轴承的全耦合流固耦合模型

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摘要

Foil gas bearings are self-acting, compliant-surface hydrodynamic bearings that usually use air or other process gas as their working fluid or lubricant. Foil gas bearings are made of one or more bump foils, which are compliant surfaces of corrugated metal, and one or more layers of top foil. Because foil gas bearing performance parameters, such as load capacity, are dominated by foil material and foil geometric designs, numerical models have been developed to predict the bearing's performance based on these characteristics. However, previous models often simplify bump foil as elastic foundation with constant stiffness and neglect top foil altogether. Further, they typically use the Reynolds equation to simplify the fluid solution. In this study, ANSYS software is used to build a 3D, fully-coupled, fluid-structure-interaction model for a foil gas bearing to predict key performance parameters such as load capacity and journal attitude angle. The model's results show good agreement with previously published test data. This not only demonstrates the feasibility of 3D fully coupled fluid-structure-interaction model for a conventional foil bearing using commercial codes, but also shows modeling capability for future generations of foil gas bearing.
机译:铝箔气体轴承是自作用的,顺应表面流体动力轴承,通常使用空气或其他工艺气体作为其工作流体或润滑剂。铝箔气体轴承由一层或多层凸点箔和一层或多层顶箔制成,凸点箔是波纹金属的顺应性表面,而凸面箔是一层或多层。由于箔气体轴承的性能参数(例如负载能力)受箔材料和箔几何设计的支配,因此已经开发了基于这些特性预测轴承性能的数值模型。但是,以前的模型通常将凹凸箔简化为具有恒定刚度的弹性基础,而完全忽略了顶层箔。此外,他们通常使用雷诺方程来简化流体溶液。在这项研究中,ANSYS软件用于为箔式气体轴承建立3D,全耦合,流固耦合模型,以预测关键性能参数,例如负载能力和轴颈姿态角。该模型的结果表明与先前发布的测试数据吻合良好。这不仅证明了使用商业代码的常规箔轴承的3D全耦合流体-结构-相互作用模型的可行性,而且还展示了下一代箔气体轴承的建模能力。

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  • 会议地点 Denver CO(US)
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    United Technologies Research Center (China) Ltd.Room 3502, 35/F, Kerry Parkside Office, 1155 Fang Dian Road, Pudong, Shanghai, 201204, P.R.China;

    United Technologies Research Center 411 Silver Lane, East Hartford, CT06108, USA;

    United Technologies Research Center 411 Silver Lane, East Hartford, CT 06108,USA;

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